首页> 外文会议>Annual conference of the Canadian Nuclear Society >RFSP-IST/CERBERUS SIMULATIONS WITH REACTOR REGULATING SYSTEM ON FOR CANDU 6 ACCIDENT ANALYSIS BY USING LARGER TIME-STEP SIZE
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RFSP-IST/CERBERUS SIMULATIONS WITH REACTOR REGULATING SYSTEM ON FOR CANDU 6 ACCIDENT ANALYSIS BY USING LARGER TIME-STEP SIZE

机译:RFSP-IST / CERBERUS模拟具有电抗器调节系统,用于通过使用较大的时间梯度分析

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The RFSP-IST/CERBERUS simulations are conducted with RRS on in order to be applied for various accident analyses of CANDU 6 reactors, such as, LBLOCA, SBLOCA, In-CORE LOCA, LOR and moderator accidents. The steady-state initial conditions are set by coupling with the thermalhydraulic code CATHENA, so that the initial conditions for the other important accident scenarios, e.g., LBLOCA, could also be established based upon the history of RRS actions that realistically follow the reactor operations. The representative cases studied here are selected in application to the moderator drain accidents, which demand the soundness and reliability of RRS predictions that show the capability of coping with the appreciable top-to-bottom flux tilts during the progress of transients. The CANDU 6 RRS algorithm requires a minimal time-step size of Δt=0.5 s that corresponds to the bulk control temporal sequences. An attempt has been made to double the time-step size to Δt=1.0 s. The results so obtained are compared against the simulation results that are obtained by using Δt=0.5 s.
机译:RFSP-IST / CERBERUS模拟是用RRS进行的,以便应用于CANDU 6反应器的各种事故分析,例如Lbloca,SBLOK,核心基因座,LOR和主持人事故。稳态初始条件是通过与热律刑代码Cateena耦合而设定的,因此还可以基于现实遵循反应堆操作的RRS动作的历史来建立其他重要事故情景的初始条件,例如Lbloca。这里研究的代表性案例在应用于主持人漏极事故中,这需要RRS预测的声音和可靠性,其显示在瞬态进度期间与可观的顶到底部磁通倾斜的能力应对的能力。 CANDU 6 RRS算法需要最小时间步长ΔT= 0.5秒,其对应于批量控制时间序列。已经尝试将时间步长到ΔT= 1.0秒的时间。如此获得的结果与使用ΔT= 0.5秒获得的模拟结果进行比较。

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